blob: 7df1a6aa7c8a72ff70e84830ff5a7a38065398ef [file] [log] [blame]
/*
* FreeRTOS+FAT build 191128 - Note: FreeRTOS+FAT is still in the lab!
* Copyright (C) 2018 Amazon.com, Inc. or its affiliates. All Rights Reserved.
* Authors include James Walmsley, Hein Tibosch and Richard Barry
*
* Permission is hereby granted, free of charge, to any person obtaining a copy of
* this software and associated documentation files (the "Software"), to deal in
* the Software without restriction, including without limitation the rights to
* use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of
* the Software, and to permit persons to whom the Software is furnished to do so,
* subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in all
* copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS
* FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR
* COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
* IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
*
* https://www.FreeRTOS.org
*
*/
/**
* @file ff_error.c
* @ingroup ERROR
*
* @defgroup ERR Error Message
* @brief Used to return human readable strings for FreeRTOS+FAT error codes.
*
**/
#include <stdio.h>
/* _HT_ with the new GNU settings, the prototype of [v]snprintf()
is not included in stdio.h Don't know why. */
int snprintf( char *, size_t, const char *, ... );
#include "ff_headers.h"
#if !defined( ARRAY_SIZE )
#define ARRAY_SIZE( x ) ( int )( sizeof( x )/sizeof( x )[ 0 ] )
#endif
/* This if-block spans the rest of the source file.*/
#if( ffconfigDEBUG != 0 )
const struct _FFMODULETAB
{
const char * const strModuleName;
const uint8_t ucModuleID;
} xFreeRTOSFATModuleTable[] =
{
{ "Unknown Module", 1}, /* 1 here is ok, as the GetError functions start at the end of the table. */
{ "ff_ioman.c", FF_GETMODULE( FF_MODULE_IOMAN ) },
{ "ff_dir.c", FF_GETMODULE( FF_MODULE_DIR ) },
{ "ff_file.c", FF_GETMODULE( FF_MODULE_FILE ) },
{ "ff_fat.c", FF_GETMODULE( FF_MODULE_FAT ) },
{ "ff_crc.c", FF_GETMODULE( FF_MODULE_CRC ) },
{ "ff_format.c", FF_GETMODULE( FF_MODULE_FORMAT ) },
{ "ff_memory.c", FF_GETMODULE( FF_MODULE_MEMORY ) },
{ "ff_string.c", FF_GETMODULE( FF_MODULE_STRING ) },
{ "ff_locking.c", FF_GETMODULE( FF_MODULE_LOCKING ) },
{ "ff_time.c", FF_GETMODULE( FF_MODULE_TIME ) },
{ "Platform Driver", FF_GETMODULE( FF_MODULE_DRIVER ) },
};
#if( ffconfigHAS_FUNCTION_TAB != 0 )
const struct _FFFUNCTIONTAB
{
const char * const strFunctionName;
const uint16_t ucFunctionID;
} xFreeRTOSFATFunctionTable[] =
{
{ "Unknown Function", 1},
/*----- FF_IOManager_t - The FreeRTOS+FAT I/O Manager */
{ "FF_CreateIOManger", FF_GETMOD_FUNC( FF_CREATEIOMAN ) },
{ "FF_DeleteIOManager", FF_GETMOD_FUNC( FF_DESTROYIOMAN ) },
{ "FF_Mount", FF_GETMOD_FUNC( FF_MOUNT ) },
{ "FF_Unmount", FF_GETMOD_FUNC( FF_UNMOUNT ) },
{ "FF_FlushCache", FF_GETMOD_FUNC( FF_FLUSHCACHE ) },
{ "FF_GetPartitionBlockSize", FF_GETMOD_FUNC( FF_GETPARTITIONBLOCKSIZE ) },
{ "FF_BlockRead", FF_GETMOD_FUNC( FF_BLOCKREAD ) },
{ "FF_BlockWrite", FF_GETMOD_FUNC( FF_BLOCKWRITE ) },
{ "FF_DetermineFatType", FF_GETMOD_FUNC( FF_DETERMINEFATTYPE ) },
{ "FF_GetEfiPartitionEntry", FF_GETMOD_FUNC( FF_GETEFIPARTITIONENTRY ) },
{ "FF_UserDriver", FF_GETMOD_FUNC( FF_USERDRIVER ) },
{ "FF_DecreaseFreeClusters", FF_GETMOD_FUNC( FF_DECREASEFREECLUSTERS ) },
{ "FF_IncreaseFreeClusters", FF_GETMOD_FUNC( FF_INCREASEFREECLUSTERS ) },
{ "FF_PartitionSearch", FF_GETMOD_FUNC( FF_PARTITIONSEARCH ) },
{ "FF_ParseExtended", FF_GETMOD_FUNC( FF_PARSEEXTENDED ) },
/*----- FF_DIR - The FreeRTOS+FAT directory handling routines */
{ "FF_FetchEntryWithContext", FF_GETMOD_FUNC( FF_FETCHENTRYWITHCONTEXT ) },
{ "FF_PushEntryWithContext", FF_GETMOD_FUNC( FF_PUSHENTRYWITHCONTEXT ) },
{ "FF_GetEntry", FF_GETMOD_FUNC( FF_GETENTRY ) },
{ "FF_FindFirst", FF_GETMOD_FUNC( FF_FINDFIRST ) },
{ "FF_FindNext", FF_GETMOD_FUNC( FF_FINDNEXT ) },
{ "FF_RewindFind", FF_GETMOD_FUNC( FF_REWINDFIND ) },
{ "FF_FindFreeDirent", FF_GETMOD_FUNC( FF_FINDFREEDIRENT ) },
{ "FF_PutEntry", FF_GETMOD_FUNC( FF_PUTENTRY ) },
{ "FF_CreateShortName", FF_GETMOD_FUNC( FF_CREATESHORTNAME ) },
{ "FF_CreateLFNs", FF_GETMOD_FUNC( FF_CREATELFNS ) },
{ "FF_ExtendDirectory", FF_GETMOD_FUNC( FF_EXTENDDIRECTORY ) },
{ "FF_MkDir", FF_GETMOD_FUNC( FF_MKDIR ) },
{ "FF_Traverse", FF_GETMOD_FUNC( FF_TRAVERSE ) },
{ "FF_FindDir", FF_GETMOD_FUNC( FF_FINDDIR ) },
/*----- FF_FILE - The FreeRTOS+FAT file handling routines */
{ "FF_GetModeBits", FF_GETMOD_FUNC( FF_GETMODEBITS ) },
{ "FF_Open", FF_GETMOD_FUNC( FF_OPEN ) },
{ "FF_isDirEmpty", FF_GETMOD_FUNC( FF_ISDIREMPTY ) },
{ "FF_RmDir", FF_GETMOD_FUNC( FF_RMDIR ) },
{ "FF_RmFile", FF_GETMOD_FUNC( FF_RMFILE ) },
{ "FF_Move", FF_GETMOD_FUNC( FF_MOVE ) },
{ "FF_isEOF", FF_GETMOD_FUNC( FF_ISEOF ) },
{ "FF_GetSequentialClusters", FF_GETMOD_FUNC( FF_GETSEQUENTIALCLUSTERS ) },
{ "FF_ReadClusters", FF_GETMOD_FUNC( FF_READCLUSTERS ) },
{ "FF_ExtendFile", FF_GETMOD_FUNC( FF_EXTENDFILE ) },
{ "FF_WriteClusters", FF_GETMOD_FUNC( FF_WRITECLUSTERS ) },
{ "FF_Read", FF_GETMOD_FUNC( FF_READ ) },
{ "FF_GetC", FF_GETMOD_FUNC( FF_GETC ) },
{ "FF_GetLine", FF_GETMOD_FUNC( FF_GETLINE ) },
{ "FF_Tell", FF_GETMOD_FUNC( FF_TELL ) },
{ "FF_Write", FF_GETMOD_FUNC( FF_WRITE ) },
{ "FF_PutC", FF_GETMOD_FUNC( FF_PUTC ) },
{ "FF_Seek", FF_GETMOD_FUNC( FF_SEEK ) },
{ "FF_Invalidate", FF_GETMOD_FUNC( FF_INVALIDATE ) },
{ "FF_CheckValid", FF_GETMOD_FUNC( FF_CHECKVALID ) },
{ "FF_Close", FF_GETMOD_FUNC( FF_CLOSE ) },
{ "FF_SetTime", FF_GETMOD_FUNC( FF_SETTIME ) },
{ "FF_BytesLeft", FF_GETMOD_FUNC( FF_BYTESLEFT ) },
{ "FF_SetFileTime", FF_GETMOD_FUNC( FF_SETFILETIME ) },
{ "FF_InitBuf", FF_GETMOD_FUNC( FF_INITBUF ) },
/*----- FF_FAT - The FreeRTOS+FAT FAT handling routines */
{ "FF_getFATEntry", FF_GETMOD_FUNC( FF_GETFATENTRY ) },
{ "FF_ClearCluster", FF_GETMOD_FUNC( FF_CLEARCLUSTER ) },
{ "FF_putFATEntry", FF_GETMOD_FUNC( FF_PUTFATENTRY ) },
{ "FF_FindFreeCluster", FF_GETMOD_FUNC( FF_FINDFREECLUSTER ) },
{ "FF_CountFreeClusters", FF_GETMOD_FUNC( FF_COUNTFREECLUSTERS ) },
/*----- FF_UNICODE - The FreeRTOS+FAT hashing routines */
{ "FF_Utf8ctoUtf16c", FF_GETMOD_FUNC( FF_UTF8CTOUTF16C ) },
{ "FF_Utf16ctoUtf8c", FF_GETMOD_FUNC( FF_UTF16CTOUTF8C ) },
{ "FF_Utf32ctoUtf16c", FF_GETMOD_FUNC( FF_UTF32CTOUTF16C ) },
{ "FF_Utf16ctoUtf32c", FF_GETMOD_FUNC( FF_UTF16CTOUTF32C ) },
/*----- FF_FORMAT - The FreeRTOS+FAT format routine */
{ "FF_FormatPartition", FF_GETMOD_FUNC( FF_FORMATPARTITION ) },
/*----- FF_STDIO - The FreeRTOS+FAT stdio front-end */
{ "ff_chmod", FF_GETMOD_FUNC( FF_CHMOD ) },
{ "ff_stat", FF_GETMOD_FUNC( FF_STAT_FUNC ) },
};
#endif /* ffconfigHAS_FUNCTION_TAB */
#define TPASTE2( a, b ) a##b
#if( ffconfigLONG_ERR_MSG != 0 )
/* To get the full error msg: "Not enough memory (malloc( ) returned NULL )" */
#define ERR_ENTRY( M, E ) { M, TPASTE2( FF_ERR_, E ) }
#else
/* To get a shorter msg: "NOT_ENOUGH_MEMORY" */
#define ERR_ENTRY( M, E ) { #E, TPASTE2( FF_ERR_, E ) }
#endif /* ffconfigLONG_ERR_MSG */
const struct _FFERRTAB
{
const char * const strErrorString;
const uint8_t ucErrorCode; /* Currently there are less then 256 errors, so lets keep this table small. */
} xFreeRTOSFATErrorTable[] =
{
{"Unknown or Generic Error!", 1},
ERR_ENTRY( "No Error", NONE ),
ERR_ENTRY( "Null Pointer provided, (probably for IOMAN)", NULL_POINTER ),
ERR_ENTRY( "Not enough memory (malloc() returned NULL)", NOT_ENOUGH_MEMORY ),
ERR_ENTRY( "Device Driver returned a FATAL error!", DEVICE_DRIVER_FAILED ),
ERR_ENTRY( "The blocksize is not 512 multiple", IOMAN_BAD_BLKSIZE ),
ERR_ENTRY( "The memory size, is not a multiple of the blocksize. (Atleast 2 Blocks)", IOMAN_BAD_MEMSIZE ),
ERR_ENTRY( "Device is already registered, use FF_UnregisterBlkDevice() first", IOMAN_DEV_ALREADY_REGD ),
ERR_ENTRY( "No mountable partition was found on the specified device", IOMAN_NO_MOUNTABLE_PARTITION ),
ERR_ENTRY( "The format of the MBR was unrecognised", IOMAN_INVALID_FORMAT ),
ERR_ENTRY( "The provided partition number is out-of-range (0 - 3)", IOMAN_INVALID_PARTITION_NUM ),
ERR_ENTRY( "The selected partition / volume doesn't appear to be FAT formatted", IOMAN_NOT_FAT_FORMATTED ),
ERR_ENTRY( "Cannot register device. (BlkSize not a multiple of 512)", IOMAN_DEV_INVALID_BLKSIZE ),
ERR_ENTRY( "Cannot unregister device, a partition is still mounted", IOMAN_PARTITION_MOUNTED ),
ERR_ENTRY( "Cannot unmount the partition while there are active FILE handles", IOMAN_ACTIVE_HANDLES ),
ERR_ENTRY( "The GPT partition header appears to be corrupt, refusing to mount", IOMAN_GPT_HEADER_CORRUPT ),
ERR_ENTRY( "Disk full", IOMAN_NOT_ENOUGH_FREE_SPACE ),
ERR_ENTRY( "Attempted to Read a sector out of bounds", IOMAN_OUT_OF_BOUNDS_READ ),
ERR_ENTRY( "Attempted to Write a sector out of bounds", IOMAN_OUT_OF_BOUNDS_WRITE ),
ERR_ENTRY( "I/O driver is busy", IOMAN_DRIVER_BUSY ),
ERR_ENTRY( "I/O driver returned fatal error", IOMAN_DRIVER_FATAL_ERROR ),
ERR_ENTRY( "I/O driver returned \"no medium error\"", IOMAN_DRIVER_NOMEDIUM ),
ERR_ENTRY( "Cannot open the file, file already in use", FILE_ALREADY_OPEN ),
ERR_ENTRY( "The specified file could not be found", FILE_NOT_FOUND ),
ERR_ENTRY( "Cannot open a Directory", FILE_OBJECT_IS_A_DIR ),
ERR_ENTRY( "Cannot open for writing: File is marked as Read-Only", FILE_IS_READ_ONLY ),
ERR_ENTRY( "Path not found", FILE_INVALID_PATH ),
ERR_ENTRY( "File operation failed - the file was not opened for writing", FILE_NOT_OPENED_IN_WRITE_MODE ),
ERR_ENTRY( "File operation failed - the file was not opened for reading", FILE_NOT_OPENED_IN_READ_MODE ),
ERR_ENTRY( "File operation failed - could not extend file", FILE_EXTEND_FAILED ),
ERR_ENTRY( "Destination file already exists", FILE_DESTINATION_EXISTS ),
ERR_ENTRY( "Source file was not found", FILE_SOURCE_NOT_FOUND ),
ERR_ENTRY( "Destination path (dir) was not found", FILE_DIR_NOT_FOUND ),
ERR_ENTRY( "Failed to create the directory Entry", FILE_COULD_NOT_CREATE_DIRENT ),
ERR_ENTRY( "A file handle was invalid", FILE_BAD_HANDLE ),
#if( ffconfigREMOVABLE_MEDIA != 0 )
ERR_ENTRY( "File handle got invalid because media was removed", FILE_MEDIA_REMOVED ),
#endif /* ffconfigREMOVABLE_MEDIA */
ERR_ENTRY( "A file or folder of the same name already exists", DIR_OBJECT_EXISTS ),
ERR_ENTRY( "DIR_DIRECTORY_FULL", DIR_DIRECTORY_FULL ),
ERR_ENTRY( "DIR_END_OF_DIR", DIR_END_OF_DIR ),
ERR_ENTRY( "The directory is not empty", DIR_NOT_EMPTY ),
ERR_ENTRY( "Could not extend File or Folder - No Free Space!", FAT_NO_FREE_CLUSTERS ),
ERR_ENTRY( "Could not find the directory specified by the path", DIR_INVALID_PATH ),
ERR_ENTRY( "The Root Dir is full, and cannot be extended on Fat12 or 16 volumes", DIR_CANT_EXTEND_ROOT_DIR ),
ERR_ENTRY( "Not enough space to extend the directory.", DIR_EXTEND_FAILED ),
ERR_ENTRY( "Name exceeds the number of allowed characters for a filename", DIR_NAME_TOO_LONG ),
#if( ffconfigUNICODE_UTF16_SUPPORT != 0 )
ERR_ENTRY( "An invalid Unicode character was provided!", UNICODE_INVALID_CODE ),
ERR_ENTRY( "Not enough space in the UTF-16 buffer to encode the entire sequence", UNICODE_DEST_TOO_SMALL ),
ERR_ENTRY( "An invalid UTF-16 sequence was encountered", UNICODE_INVALID_SEQUENCE ),
ERR_ENTRY( "Filename exceeds MAX long-filename length when converted to UTF-16", UNICODE_CONVERSION_EXCEEDED ),
#endif /* ffconfigUNICODE_UTF16_SUPPORT */
};
/**
* @public
* @brief Returns a pointer to a string relating to a FreeRTOS+FAT error code.
*
* @param iErrorCode The error code.
*
* @return Pointer to a string describing the error.
*
**/
const char *FF_GetErrMessage( FF_Error_t iErrorCode )
{
uint32_t stCount = ARRAY_SIZE( xFreeRTOSFATErrorTable );
while( stCount-- )
{
if( ( ( UBaseType_t )xFreeRTOSFATErrorTable[ stCount ].ucErrorCode ) == FF_GETERROR( iErrorCode ) )
{
break;
}
}
return xFreeRTOSFATErrorTable[ stCount ].strErrorString;
}
const char *FF_GetErrModule( FF_Error_t iErrorCode )
{
uint32_t stCount = ARRAY_SIZE( xFreeRTOSFATModuleTable );
while( stCount-- )
{
if( xFreeRTOSFATModuleTable[ stCount ].ucModuleID == ( uint8_t )FF_GETMODULE( iErrorCode ) )
{
break;
}
}
return xFreeRTOSFATModuleTable[ stCount ].strModuleName;
}
#if( ffconfigHAS_FUNCTION_TAB != 0 )
const char *FF_GetErrFunction( FF_Error_t iErrorCode )
{
uint32_t stCount = ARRAY_SIZE( xFreeRTOSFATFunctionTable );
uint16_t ModuleFunc = FF_GETMOD_FUNC( iErrorCode );
static char funcCode[32];
while( stCount-- != 0 )
{
if( xFreeRTOSFATFunctionTable[ stCount ].ucFunctionID == ModuleFunc )
{
return xFreeRTOSFATFunctionTable[ stCount ].strFunctionName;
}
}
snprintf( funcCode, sizeof( funcCode ), "Func %X", ModuleFunc );
return ( const char * )funcCode;
}
#endif /* ffconfigHAS_FUNCTION_TAB */
const char *FF_GetErrDescription( FF_Error_t iErrorCode, char *apBuf, int aMaxlen )
{
if( FF_isERR( iErrorCode ) )
{
#if( ffconfigHAS_FUNCTION_TAB != 0 )
snprintf (apBuf, ( size_t ) aMaxlen, "%s::%s::%s",
FF_GetErrModule( iErrorCode ),
FF_GetErrFunction( iErrorCode ),
FF_GetErrMessage( iErrorCode ));
#else
snprintf (apBuf, ( size_t ) aMaxlen, "%s::%s",
FF_GetErrModule( iErrorCode ),
FF_GetErrMessage( iErrorCode ));
#endif /* ffconfigHAS_FUNCTION_TAB */
}
else
{
snprintf (apBuf, ( size_t ) aMaxlen, "No error");
}
return apBuf;
}
#endif /* ffconfigDEBUG != 0 */